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FOXR2 Is an Epigenetically Regulated Pan-Cancer Oncogene That Activates ETS Transcriptional Circuits

Forkhead box R2 (FOXR2) is a forkhead transcription factor located on the X chromosome whose expression is normally restricted to the testis. In this study, we performed a pan-cancer analysis of FOXR2 activation across more than 10,000 adult and pediatric cancer samples and found FOXR2 to be aberran...

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Autores principales: Tsai, Jessica W., Cejas, Paloma, Wang, Dayle K., Patel, Smruti, Wu, David W., Arounleut, Phonepasong, Wei, Xin, Zhou, Ningxuan, Syamala, Sudeepa, Dubois, Frank P.B., Crane, Alexander, Pelton, Kristine, Vogelzang, Jayne, Sousa, Cecilia, Baguette, Audrey, Chen, Xiaolong, Condurat, Alexandra L., Dixon-Clarke, Sarah E., Zhou, Kevin N., Lu, Sophie D., Gonzalez, Elizabeth M., Chacon, Madison S., Digiacomo, Jeromy J., Kumbhani, Rushil, Novikov, Dana, Hunter, J'Ya, Tsoli, Maria, Ziegler, David S., Dirksen, Uta, Jager, Natalie, Balasubramanian, Gnana Prakash, Kramm, Christof M., Nathrath, Michaela, Bielack, Stefan, Baker, Suzanne J., Zhang, Jinghui, McFarland, James M., Getz, Gad, Aguet, François, Jabado, Nada, Witt, Olaf, Pfister, Stefan M., Ligon, Keith L., Hovestadt, Volker, Kleinman, Claudia L., Long, Henry, Jones, David T.W., Bandopadhayay, Pratiti, Phoenix, Timothy N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9437574/
https://www.ncbi.nlm.nih.gov/pubmed/35802025
http://dx.doi.org/10.1158/0008-5472.CAN-22-0671
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author Tsai, Jessica W.
Cejas, Paloma
Wang, Dayle K.
Patel, Smruti
Wu, David W.
Arounleut, Phonepasong
Wei, Xin
Zhou, Ningxuan
Syamala, Sudeepa
Dubois, Frank P.B.
Crane, Alexander
Pelton, Kristine
Vogelzang, Jayne
Sousa, Cecilia
Baguette, Audrey
Chen, Xiaolong
Condurat, Alexandra L.
Dixon-Clarke, Sarah E.
Zhou, Kevin N.
Lu, Sophie D.
Gonzalez, Elizabeth M.
Chacon, Madison S.
Digiacomo, Jeromy J.
Kumbhani, Rushil
Novikov, Dana
Hunter, J'Ya
Tsoli, Maria
Ziegler, David S.
Dirksen, Uta
Jager, Natalie
Balasubramanian, Gnana Prakash
Kramm, Christof M.
Nathrath, Michaela
Bielack, Stefan
Baker, Suzanne J.
Zhang, Jinghui
McFarland, James M.
Getz, Gad
Aguet, François
Jabado, Nada
Witt, Olaf
Pfister, Stefan M.
Ligon, Keith L.
Hovestadt, Volker
Kleinman, Claudia L.
Long, Henry
Jones, David T.W.
Bandopadhayay, Pratiti
Phoenix, Timothy N.
author_facet Tsai, Jessica W.
Cejas, Paloma
Wang, Dayle K.
Patel, Smruti
Wu, David W.
Arounleut, Phonepasong
Wei, Xin
Zhou, Ningxuan
Syamala, Sudeepa
Dubois, Frank P.B.
Crane, Alexander
Pelton, Kristine
Vogelzang, Jayne
Sousa, Cecilia
Baguette, Audrey
Chen, Xiaolong
Condurat, Alexandra L.
Dixon-Clarke, Sarah E.
Zhou, Kevin N.
Lu, Sophie D.
Gonzalez, Elizabeth M.
Chacon, Madison S.
Digiacomo, Jeromy J.
Kumbhani, Rushil
Novikov, Dana
Hunter, J'Ya
Tsoli, Maria
Ziegler, David S.
Dirksen, Uta
Jager, Natalie
Balasubramanian, Gnana Prakash
Kramm, Christof M.
Nathrath, Michaela
Bielack, Stefan
Baker, Suzanne J.
Zhang, Jinghui
McFarland, James M.
Getz, Gad
Aguet, François
Jabado, Nada
Witt, Olaf
Pfister, Stefan M.
Ligon, Keith L.
Hovestadt, Volker
Kleinman, Claudia L.
Long, Henry
Jones, David T.W.
Bandopadhayay, Pratiti
Phoenix, Timothy N.
author_sort Tsai, Jessica W.
collection PubMed
description Forkhead box R2 (FOXR2) is a forkhead transcription factor located on the X chromosome whose expression is normally restricted to the testis. In this study, we performed a pan-cancer analysis of FOXR2 activation across more than 10,000 adult and pediatric cancer samples and found FOXR2 to be aberrantly upregulated in 70% of all cancer types and 8% of all individual tumors. The majority of tumors (78%) aberrantly expressed FOXR2 through a previously undescribed epigenetic mechanism that involves hypomethylation of a novel promoter, which was functionally validated as necessary for FOXR2 expression and proliferation in FOXR2-expressing cancer cells. FOXR2 promoted tumor growth across multiple cancer lineages and co-opted ETS family transcription circuits across cancers. Taken together, this study identifies FOXR2 as a potent and ubiquitous oncogene that is epigenetically activated across the majority of human cancers. The identification of hijacking of ETS transcription circuits by FOXR2 extends the mechanisms known to active ETS transcription factors and highlights how transcription factor families cooperate to enhance tumorigenesis. SIGNIFICANCE: This work identifies a novel promoter that drives aberrant FOXR2 expression and delineates FOXR2 as a pan-cancer oncogene that specifically activates ETS transcriptional circuits across human cancers. See related commentary by Liu and Northcott, p. 2977
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spelling pubmed-94375742022-10-29 FOXR2 Is an Epigenetically Regulated Pan-Cancer Oncogene That Activates ETS Transcriptional Circuits Tsai, Jessica W. Cejas, Paloma Wang, Dayle K. Patel, Smruti Wu, David W. Arounleut, Phonepasong Wei, Xin Zhou, Ningxuan Syamala, Sudeepa Dubois, Frank P.B. Crane, Alexander Pelton, Kristine Vogelzang, Jayne Sousa, Cecilia Baguette, Audrey Chen, Xiaolong Condurat, Alexandra L. Dixon-Clarke, Sarah E. Zhou, Kevin N. Lu, Sophie D. Gonzalez, Elizabeth M. Chacon, Madison S. Digiacomo, Jeromy J. Kumbhani, Rushil Novikov, Dana Hunter, J'Ya Tsoli, Maria Ziegler, David S. Dirksen, Uta Jager, Natalie Balasubramanian, Gnana Prakash Kramm, Christof M. Nathrath, Michaela Bielack, Stefan Baker, Suzanne J. Zhang, Jinghui McFarland, James M. Getz, Gad Aguet, François Jabado, Nada Witt, Olaf Pfister, Stefan M. Ligon, Keith L. Hovestadt, Volker Kleinman, Claudia L. Long, Henry Jones, David T.W. Bandopadhayay, Pratiti Phoenix, Timothy N. Cancer Res Genome and Epigenome Forkhead box R2 (FOXR2) is a forkhead transcription factor located on the X chromosome whose expression is normally restricted to the testis. In this study, we performed a pan-cancer analysis of FOXR2 activation across more than 10,000 adult and pediatric cancer samples and found FOXR2 to be aberrantly upregulated in 70% of all cancer types and 8% of all individual tumors. The majority of tumors (78%) aberrantly expressed FOXR2 through a previously undescribed epigenetic mechanism that involves hypomethylation of a novel promoter, which was functionally validated as necessary for FOXR2 expression and proliferation in FOXR2-expressing cancer cells. FOXR2 promoted tumor growth across multiple cancer lineages and co-opted ETS family transcription circuits across cancers. Taken together, this study identifies FOXR2 as a potent and ubiquitous oncogene that is epigenetically activated across the majority of human cancers. The identification of hijacking of ETS transcription circuits by FOXR2 extends the mechanisms known to active ETS transcription factors and highlights how transcription factor families cooperate to enhance tumorigenesis. SIGNIFICANCE: This work identifies a novel promoter that drives aberrant FOXR2 expression and delineates FOXR2 as a pan-cancer oncogene that specifically activates ETS transcriptional circuits across human cancers. See related commentary by Liu and Northcott, p. 2977 American Association for Cancer Research 2022-09-02 2022-07-08 /pmc/articles/PMC9437574/ /pubmed/35802025 http://dx.doi.org/10.1158/0008-5472.CAN-22-0671 Text en ©2022 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Genome and Epigenome
Tsai, Jessica W.
Cejas, Paloma
Wang, Dayle K.
Patel, Smruti
Wu, David W.
Arounleut, Phonepasong
Wei, Xin
Zhou, Ningxuan
Syamala, Sudeepa
Dubois, Frank P.B.
Crane, Alexander
Pelton, Kristine
Vogelzang, Jayne
Sousa, Cecilia
Baguette, Audrey
Chen, Xiaolong
Condurat, Alexandra L.
Dixon-Clarke, Sarah E.
Zhou, Kevin N.
Lu, Sophie D.
Gonzalez, Elizabeth M.
Chacon, Madison S.
Digiacomo, Jeromy J.
Kumbhani, Rushil
Novikov, Dana
Hunter, J'Ya
Tsoli, Maria
Ziegler, David S.
Dirksen, Uta
Jager, Natalie
Balasubramanian, Gnana Prakash
Kramm, Christof M.
Nathrath, Michaela
Bielack, Stefan
Baker, Suzanne J.
Zhang, Jinghui
McFarland, James M.
Getz, Gad
Aguet, François
Jabado, Nada
Witt, Olaf
Pfister, Stefan M.
Ligon, Keith L.
Hovestadt, Volker
Kleinman, Claudia L.
Long, Henry
Jones, David T.W.
Bandopadhayay, Pratiti
Phoenix, Timothy N.
FOXR2 Is an Epigenetically Regulated Pan-Cancer Oncogene That Activates ETS Transcriptional Circuits
title FOXR2 Is an Epigenetically Regulated Pan-Cancer Oncogene That Activates ETS Transcriptional Circuits
title_full FOXR2 Is an Epigenetically Regulated Pan-Cancer Oncogene That Activates ETS Transcriptional Circuits
title_fullStr FOXR2 Is an Epigenetically Regulated Pan-Cancer Oncogene That Activates ETS Transcriptional Circuits
title_full_unstemmed FOXR2 Is an Epigenetically Regulated Pan-Cancer Oncogene That Activates ETS Transcriptional Circuits
title_short FOXR2 Is an Epigenetically Regulated Pan-Cancer Oncogene That Activates ETS Transcriptional Circuits
title_sort foxr2 is an epigenetically regulated pan-cancer oncogene that activates ets transcriptional circuits
topic Genome and Epigenome
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9437574/
https://www.ncbi.nlm.nih.gov/pubmed/35802025
http://dx.doi.org/10.1158/0008-5472.CAN-22-0671
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